This commit is contained in:
Seth Trowbridge 2022-12-03 19:05:26 -05:00
parent c4c60c0a59
commit 40b0589583
6 changed files with 235 additions and 157 deletions

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@ -2,6 +2,7 @@
"tasks":
{
"fs": "deno run -A --no-lock https://deno.land/std@0.166.0/http/file_server.ts",
"test": "deno test test/store_test.js --no-lock --watch"
"test": "deno test --no-lock --watch test/store_test.js",
"test-debug": "deno test --no-lock --inspect-brk test/store_test.js"
}
}

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@ -1,2 +1,2 @@
<div id="app"></div>
<script type="module" src="app.js"></script>
<script type="module" src="src/app.js"></script>

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@ -3,6 +3,12 @@ import * as TW from "https://esm.sh/@twind/core@1.0.1";
import TWPreTail from "https://esm.sh/@twind/preset-tailwind@1.0.1";
import TWPreAuto from "https://esm.sh/@twind/preset-autoprefix@1.0.1";
import * as UI from "./ui.js";
import { Reducer, Initial } from "./store.js";
import React from "https://esm.sh/preact@10.11.3/compat";
import {html} from "https://esm.sh/htm@3.1.1/preact";
/** @type {TW.TwindConfig} */
const Configure = {
theme:
@ -70,19 +76,39 @@ ShadowDOM.append(ShadowCSS);
ShadowDOM.append(ShadowDiv);
TW.observe(TW.twind(Configure, TW.cssom(ShadowCSS)), ShadowDiv);
import * as UI from "./ui.js";
import {render} from "https://esm.sh/preact@10.11.3/compat";
import {html} from "https://esm.sh/htm@3.1.1/preact";
render(html`
<${UI.Button} icon="+">hey!<//>
<${UI.Button} light>Left<//>
<${UI.Button} inactive>Right<//>
<${UI.Button} disabled>Right<//>
<${UI.Chart}>
<svg class="absolute top-0 w-full h-full overflow-visible stroke(blue-700 bold draw)">
<${UI.Mark} right=${true} x=${"20%"} y="20%" />
<${UI.Mark} right=${false} x=${"10%"} y="20%" response=${true} />
<${UI.Mark} right=${false}/>
</svg>
const StoreContext = React.createContext(null);
const StoreProvider =(props)=>
{
const reducer = React.useReducer(Reducer, Initial);
return html`<${StoreContext.Provider} value=${reducer}>${props.children}<//>`;
}
const StoreConsumer =()=> React.useContext(StoreContext);
const Deep =()=>
{
const [State, Dispatch] = React.useContext(StoreContext);
return html`
<${UI.Button} onClick=${()=>Dispatch({Name:"Stim", Data:5})}>
${State.Stim}
<//>`;
}
React.render(html`
<${StoreProvider}>
<${UI.Button} icon="+">hey!<//>
<${UI.Button} light>Left<//>
<${UI.Button} inactive>Right<//>
<${UI.Button} disabled>Right<//>
<${Deep}/>
<${UI.Chart}>
<svg class="absolute top-0 w-full h-full overflow-visible stroke(blue-700 bold draw)">
<${UI.Mark} right=${true} x=${"20%"} y="20%" />
<${UI.Mark} right=${false} x=${"10%"} y="20%" response=${true} />
<${UI.Mark} right=${false}/>
<line x1=${"10%"} y1=${"10%"} x2=${"50%"} y2=${"50%"} class="stroke-2 opacity-60" />
</svg>
<//>
<//>
`, ShadowDiv);

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@ -56,9 +56,9 @@ export const MarkSet =(freq, chan, mark)=> freq[ chan ? "UserR" : "UserL" ] = ma
/** @typedef {{Stim:number, Resp:boolean}} TestFrequencySample */
/** @typedef {{Hz:number, TestL:TestFrequencySample, TestR:TestFrequencySample, UserL?:TestFrequencySample, UserR?:TestFrequencySample}} TestFrequency */
/** @typedef {{Name:string, Plot:Array<TestFrequency>, Draw?:DrawTest}} Test */
/** @typedef {{Name:string, Plot:Array<TestFrequency>}} Test */
/** @typedef {{Test?:Test, Freq?:TestFrequency, Mark?:TestFrequencySample}} Context */
/** @typedef {{Chan:number, Freq:number, Stim:number, Live:Context, Tests:Array<Test>}} State */
/** @typedef {{Chan:number, Freq:number, Stim:number, Live:Context, Draw:{UserL:DrawGroup, UserR:DrawGroup, TestL:DrawGroup, TestR:DrawGroup}, Tests:Array<Test>}} State */
/** @type {State} */
export const Initial =
{
@ -71,6 +71,13 @@ export const Initial =
Freq: undefined,
Mark: undefined
},
Draw:
{
UserL:{Points:[], Paths:[]},
UserR:{Points:[], Paths:[]},
TestL:{Points:[], Paths:[]},
TestR:{Points:[], Paths:[]}
},
Tests: [
{
Name: "Patient A Asymmetric Notch",
@ -83,6 +90,34 @@ export const Initial =
]
};
/*
const minified =
[
1,
[
[20, 30, 50, 40, 60, 80],[20, 30, 50, 40, 60, 80]
]
];
const Expand =(inMin)=>
{
const outTests = [];
const inFreq = inMin[0];
for(let i=1; i<inMin.length; i++)
{
let inTest = inMin[i];
let inTestName = inTest[0];
const outTest = {
Name:inTest[0],
Plot:[]
};
outTests.push(outTest);
const outFreq = {Hz:0, TestL:{Stim:0, Resp:true}, TestR:{Stim:0, Resp:true}, UserL:undefined, UserR:undefined};
}
}
*/
/** @typedef {{Name:"Mark", Data:boolean|null}} ActionMark */
/** @typedef {{Name:"Test", Data:number}} ActionTest */
/** @typedef {{Name:"Chan", Data:number}} ActionChan */
@ -125,10 +160,10 @@ const Update =
}
};
/** @typedef {{X:number, Y:number, Resp:boolean}} DrawPoint */
/** @typedef {{X:number, Y:number, Mark:TestFrequencySample}} DrawPoint */
/** @typedef {{Points:Array<DrawPoint>, Paths:Array<Array<DrawPoint>>}} DrawGroup */
/** @typedef {{Left:DrawGroup, Right:DrawGroup}} DrawChart */
/** @typedef {{User:DrawGroup, Test:DrawGroup}} DrawTest */
/** @typedef {{User?:DrawChart, Test?:DrawChart}} DrawTest */
/** @type {(inTest:Test, inChannel:number, inIsUser:boolean)=>DrawGroup} */
export function Congtiguous(inTest, inChannel, inIsUser)
{
@ -149,7 +184,11 @@ export function Congtiguous(inTest, inChannel, inIsUser)
if(lookup)
{
/** @type {DrawPoint} */
const point = { X: lookup[1]*100, Y: LimitMap(mark?.Stim, ToneLimit.Stim)*100, Resp: mark.Resp};
const point = {
X: lookup[1]*100,
Y: LimitMap(mark.Stim, ToneLimit.Stim)*100,
Mark: mark
};
output.Points.push(point);
if(mark.Resp)
@ -184,17 +223,26 @@ export function Reducer(inState, inAction)
clone.Live.Test = clone.Tests[Data];
Update.Freq(clone);
Update.Mark(clone);
clone.Draw = {
UserL: Congtiguous(clone.Live.Test, 0, true ),
UserR: Congtiguous(clone.Live.Test, 1, true ),
TestL: Congtiguous(clone.Live.Test, 0, false),
TestR: Congtiguous(clone.Live.Test, 1, false)
};
}
else if (Name == "Mark")
{
if(clone.Live.Freq)
if(clone.Live.Test && clone.Live.Freq)
{
clone.Live.Mark = MarkSet(clone.Live.Freq, clone.Chan, Data !== null ? {Stim:clone.Stim, Resp:Data} : undefined);
clone.Draw = {...clone.Draw};
clone.Draw[clone.Chan == 0 ? "UserL" : "UserR"] = Congtiguous(clone.Live.Test, clone.Chan, true);
}
}
else if( Name=="Stim" || Name=="Chan" || Name=="Freq")
{
clone[Name] = LimitCut(Data, ToneLimit[Name]);
clone[Name] = LimitCut(clone[Name]+Data, ToneLimit[Name]);
if(Name != "Stim")
{
Update.Freq(clone);

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@ -1,20 +1,19 @@
//@ts-check
import React from "https://esm.sh/preact@10.11.3/compat";
import { html } from "https://esm.sh/htm@3.1.1/preact";
import { ColumnMapping, ColumnLookup } from "./store.js";
import { ColumnMapping } from "./store.js";
/** @typedef {({children}:{children:React.ReactNode})=>JSX.Element} BasicElement */
/** @type {({children, icon, light, disabled, inactive}:{children:React.ReactNode, icon?:JSX.Element, light:boolean, disabled:boolean, inactive:boolean})=>JSX.Element} */
export function Button({children, icon, light, disabled, inactive})
/** @type {({children, icon, light, disabled, inactive, onClick}:{children:React.ReactNode, icon?:JSX.Element, light:boolean, disabled:boolean, inactive:boolean, onClick:()=>void})=>JSX.Element} */
export function Button({children, icon, light, disabled, inactive, onClick})
{
const [LightGet, LightSet] = React.useState(light);
const [FlashGet, FlashSet] = React.useState(0);
const handleClick =()=>
{
if(inactive||disabled){ return; }
LightSet(!LightGet);
FlashSet(FlashGet+1);
onClick();
};
return html`
@ -30,7 +29,7 @@ export function Button({children, icon, light, disabled, inactive})
<span class="relative">${icon}</span>
</span>` }
<span class="p-2 relative border-l(1 [#ffffff44])">
<span class="absolute shadow-glow-yellow-500 top-0 left-1/2 w-6 h-[6px] bg-white rounded-full translate(-x-1/2 -y-1/2) transition-all duration-500 ${LightGet ? "opacity-100" : "opacity-0 scale-y-0"}"></span>
<span class="absolute shadow-glow-yellow-500 top-0 left-1/2 w-6 h-[6px] bg-white rounded-full translate(-x-1/2 -y-1/2) transition-all duration-500 ${light ? "opacity-100" : "opacity-0 scale-y-0"}"></span>
${children}
</span>
</button>`;
@ -45,7 +44,7 @@ export function Chart({children})
ColumnMapping.forEach(([label, position, normal])=>
{
rules.push(html`
<span class="block absolute top-[-${inset}px] left-[${position}%] w-0 h-[calc(100%+${inset*2}px)] border-r(1 slate-400) ${!normal && "border-dashed"}">
<span class="block absolute top-[-${inset}px] left-[${position*100}%] w-0 h-[calc(100%+${inset*2}px)] border-r(1 slate-400) ${!normal && "border-dashed"}">
<span class="block absolute top-0 left-0 -translate-x-1/2 -translate-y-full pb-${normal ? 4 : 1}">${label}</span>
</span>`);
});

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@ -1,139 +1,143 @@
import { assertEquals } from "https://deno.land/std@0.166.0/testing/asserts.ts";
import { Reducer, ColumnMapping, Congtiguous } from "../src/store.js";
Deno.test("Store", async(t)=>
{
let state = {
Chan: 0,
Freq: 3,
Stim: 30,
Live:
{
Test: undefined,
Freq: undefined,
Mark: undefined
},
Tests: [
{
Name: "Patient A Asymmetric Notch",
Plot:
[
{ Hz: 500, TestL: { Stim: 30, Resp: true }, TestR: { Stim: 50, Resp: true } },
{ Hz: 1000, TestL: { Stim: 50, Resp: true }, TestR: { Stim: 55, Resp: true } }
]
}
]
};
await t.step("Initialize", async(t)=>
let state = {
Chan: 0,
Freq: 1,
Stim: 20,
Live:
{
await t.step("A test exists with 500 and 1k hz plots", ()=>
{
assertEquals(state.Tests.length > 0, true);
const test = state.Tests[0];
assertEquals(test.Plot.length > 1, true);
assertEquals(test.Plot[0].Hz, 500);
assertEquals(test.Plot[1].Hz, 1000);
});
await t.step("Dispatch Test, Freq, Stim, and Chan updates", ()=>
{
state = Reducer(state, {Name:"Test", Data:0});
state = Reducer(state, {Name:"Freq", Data:2});
state = Reducer(state, {Name:"Stim", Data:25});
state = Reducer(state, {Name:"Chan", Data:1});
});
await t.step("Freq, Stim, and Chan have the correct values", ()=>
{
assertEquals(state.Stim, 25);
assertEquals(state.Freq, 2);
assertEquals(state.Chan, 1);
});
await t.step("Live context values are correct", ()=>
{
assertEquals(state.Live.Test, state.Tests[0]);
assertEquals(state.Live.Freq.Hz, ColumnMapping[state.Freq][0]);
assertEquals(state.Live.Mark, undefined, "(User) Mark is undefined");
});
});
await t.step("Make Marks", async(t)=>
Test: undefined,
Freq: undefined,
Mark: undefined
},
Draw:
{
await t.step("Dispatch Mark create", ()=>
UserL:{Points:[], Paths:[]},
UserR:{Points:[], Paths:[]},
TestL:{Points:[], Paths:[]},
TestR:{Points:[], Paths:[]}
},
Tests: [
{
state = Reducer(state, {Name:"Mark", Data:true});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR !== undefined, true, `there will be a user mark for the right channel`);
assertEquals(state.Live.Freq.UserL === undefined, true, `the left channel user mark will be undefined`);
assertEquals(state.Live.Mark.Stim, state.Stim);
assertEquals(state.Live.Mark.Resp, true);
});
await t.step("Dispatch Mark delete", ()=>
{
state = Reducer(state, {Name:"Mark", Data:null});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR === undefined, true);
assertEquals(state.Live.Freq.UserL === undefined, true);
assertEquals(state.Live.Mark, undefined);
});
await t.step("Dispatch Freq, Stim, and Chan updates", ()=>
{
state = Reducer(state, {Name:"Freq", Data:3});
state = Reducer(state, {Name:"Stim", Data:65});
state = Reducer(state, {Name:"Chan", Data:0});
});
await t.step("Live context values are correct", ()=>
{
assertEquals(state.Live.Test, state.Tests[0]);
assertEquals(state.Live.Freq.Hz, ColumnMapping[state.Freq][0]);
assertEquals(state.Live.Mark, undefined);
});
await t.step("Dispatch Mark create", ()=>
{
state = Reducer(state, {Name:"Mark", Data:false});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR === undefined, true, `there will be a user mark for the right channel`);
assertEquals(state.Live.Freq.UserL !== undefined, true, `the left channel user mark will be undefined`);
assertEquals(state.Live.Mark.Stim, state.Stim);
assertEquals(state.Live.Mark.Resp, false);
});
})
await t.step("Contiguous Lines", ()=>
{
/** @type {import("../src/store.js").Test} */
const model = {
Name:"",
Plot:[
{Hz: 500, TestL: {Stim:30, Resp:true}, TestR: {Stim:35, Resp:true}, UserL:{Stim:20, Resp:true}},
{Hz: 1000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:true}},
{Hz: 2000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:false}},
{Hz: 3000, TestL: {Stim:30, Resp:true}, TestR: {Stim:35, Resp:true}, UserL:{Stim:20, Resp:true}},
{Hz: 4000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:true}},
{Hz: 4000, TestL: {Stim:50, Resp:true}, TestR: {Stim:55, Resp:true}, UserL:{Stim:40, Resp:true}}
Name: "Patient A Asymmetric Notch",
Plot:
[
{ Hz: 500, TestL: { Stim: 30, Resp: true }, TestR: { Stim: 50, Resp: true } },
{ Hz: 1000, TestL: { Stim: 50, Resp: true }, TestR: { Stim: 55, Resp: true } }
]
}
]
};
const {Points, Paths} = Congtiguous(model, 0, true);
assertEquals(Points.length, 6);
assertEquals(Paths.length, 2);
assertEquals(Paths[0].length, 2);
assertEquals(Paths[1].length, 3);
Deno.test("Initialize", async(t)=>
{
await t.step("A test exists with 500 and 1k hz plots", ()=>
{
assertEquals(state.Tests.length > 0, true);
const test = state.Tests[0];
assertEquals(test.Plot.length > 1, true);
assertEquals(test.Plot[0].Hz, 500);
assertEquals(test.Plot[1].Hz, 1000);
});
await t.step("Dispatch Test, Freq, Stim, and Chan updates", ()=>
{
state = Reducer(state, {Name:"Test", Data:0});
state = Reducer(state, {Name:"Freq", Data:1});
state = Reducer(state, {Name:"Stim", Data:5});
state = Reducer(state, {Name:"Chan", Data:1});
});
await t.step("Freq, Stim, and Chan have the correct values", ()=>
{
assertEquals(state.Stim, 25);
assertEquals(state.Freq, 2);
assertEquals(state.Chan, 1);
});
await t.step("Live context values are correct", ()=>
{
assertEquals(state.Live.Test, state.Tests[0]);
assertEquals(state.Live.Freq.Hz, ColumnMapping[state.Freq][0]);
assertEquals(state.Live.Mark, undefined, "(User) Mark is undefined");
});
});
Deno.test("Make Marks", async(t)=>
{
await t.step("Dispatch Mark create", ()=>
{
state = Reducer(state, {Name:"Mark", Data:true});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR !== undefined, true, `there will be a user mark for the right channel`);
assertEquals(state.Live.Freq.UserL === undefined, true, `the left channel user mark will be undefined`);
assertEquals(state.Live.Mark.Stim, state.Stim);
assertEquals(state.Live.Mark.Resp, true);
});
await t.step("Dispatch Mark delete", ()=>
{
state = Reducer(state, {Name:"Mark", Data:null});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR === undefined, true);
assertEquals(state.Live.Freq.UserL === undefined, true);
assertEquals(state.Live.Mark, undefined);
});
await t.step("Dispatch Freq, Stim, and Chan updates", ()=>
{
state = Reducer(state, {Name:"Freq", Data:1});
state = Reducer(state, {Name:"Stim", Data:5});
state = Reducer(state, {Name:"Chan", Data:0});
});
await t.step("Live context values are correct", ()=>
{
assertEquals(state.Live.Test, state.Tests[0]);
assertEquals(state.Live.Freq.Hz, ColumnMapping[state.Freq][0]);
assertEquals(state.Live.Mark, undefined);
});
await t.step("Dispatch Mark create", ()=>
{
state = Reducer(state, {Name:"Mark", Data:false});
});
await t.step("Check marked value", ()=>
{
assertEquals(state.Live.Freq.UserR !== undefined, true, `there will be a user mark for the right channel`);
assertEquals(state.Live.Freq.UserL === undefined, true, `the left channel user mark will be undefined`);
assertEquals(state.Live.Mark.Stim, state.Stim);
assertEquals(state.Live.Mark.Resp, false);
});
});
Deno.test("Contiguous Lines", ()=>
{
/** @type {import("../src/store.js").Test} */
const model = {
Name:"",
Plot:[
{Hz: 500, TestL: {Stim:30, Resp:true}, TestR: {Stim:35, Resp:true}, UserL:{Stim:20, Resp:true}},
{Hz: 1000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:true}},
{Hz: 2000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:false}},
{Hz: 3000, TestL: {Stim:30, Resp:true}, TestR: {Stim:35, Resp:true}, UserL:{Stim:20, Resp:true}},
{Hz: 4000, TestL: {Stim:40, Resp:true}, TestR: {Stim:45, Resp:true}, UserL:{Stim:30, Resp:true}},
{Hz: 4000, TestL: {Stim:50, Resp:true}, TestR: {Stim:55, Resp:true}, UserL:{Stim:40, Resp:true}}
]
}
const {Points, Paths} = Congtiguous(model, 0, true);
assertEquals(Points.length, 6);
assertEquals(Paths.length, 2);
assertEquals(Paths[0].length, 2);
assertEquals(Paths[1].length, 3);
});